Kahoun J R, Ruoho A E
Department of Pharmacology, University of Wisconsin Medical School, Madison 53706.
Proc Natl Acad Sci U S A. 1992 Feb 15;89(4):1393-7. doi: 10.1073/pnas.89.4.1393.
A carrier-free radioiodinated cocaine photo-affinity label, (-)-3-(125I)iodo-4-azidococaine [(125I)IACoc], has been synthesized and used as a probe for cocaine-binding proteins. Photoaffinity labeling with 0.5 nM (125I)IACoc resulted in selective derivatization of a 26-kDa polypeptide with the pharmacology of a sigma receptor in membranes derived from whole rat brain, rat liver, and human placenta. Covalent labeling of the 26-kDa polypeptide was inhibited by 1 microM haloperidol, di(2-tolyl)guanidine (DTG), 3-(3-hydroxyphenyl)-N-(1-propyl)piperidine (3-PPP), dextromethorphan, and carbetapentane. Stereoselective protection of (125I)IACoc photolabeling by 3-PPP [(+)-3-PPP more potent than (-)-3-PPP] was observed. (125I)IACoc labeling of the 26-kDa polypeptide was also inhibited by 10 microM imipramine, amitriptyline, fluoxetine, benztropine, and tetrabenazine. The size of the (125I)I-ACoc-labeled proteins is consistent with the size of proteins photolabeled in guinea pig brain and liver membranes by using the sigma photolabel azido-[3H]DTG. Kinetic analysis of (125I)IACoc binding to rat liver microsomes revealed two sites with Kd values of 19 and 126 pM, respectively. The presence or absence of proteolytic inhibitors during membrane preparation did not alter the size of the photolabeled sigma receptor, indicating that the 26-kDa polypeptide was not derived from a larger protein. In summary, (125I)IACoc is a potent and highly specific photoaffinity label for the haloperidol-sensitive sigma receptor and will be useful for its biochemical and molecular characterization.
一种无载体的放射性碘化可卡因光亲和标记物,(-)-3-(125I)碘-4-叠氮基可卡因[(125I)IACoc],已被合成并用作可卡因结合蛋白的探针。用0.5 nM(125I)IACoc进行光亲和标记,导致在源自全大鼠脑、大鼠肝脏和人胎盘的膜中,一种具有σ受体药理学特性的26 kDa多肽发生选择性衍生化。1 microM氟哌啶醇、二(2-甲苯基)胍(DTG)、3-(3-羟基苯基)-N-(1-丙基)哌啶(3-PPP)、右美沙芬和卡比戊烷可抑制26 kDa多肽的共价标记。观察到3-PPP对(125I)IACoc光标记的立体选择性保护作用[(+)-3-PPP比(-)-3-PPP更有效]。10 microM丙咪嗪、阿米替林、氟西汀、苯海索和丁苯那嗪也可抑制(125I)IACoc对26 kDa多肽的标记。(125I)I-ACoc标记蛋白的大小与使用σ光标记叠氮基-[3H]DTG在豚鼠脑和肝膜中光标记的蛋白大小一致。(125I)IACoc与大鼠肝脏微粒体结合的动力学分析显示有两个位点,Kd值分别为19和126 pM。在膜制备过程中存在或不存在蛋白水解抑制剂,均不会改变光标记的σ受体的大小,这表明26 kDa多肽不是由更大的蛋白质衍生而来。总之,(125I)IACoc是一种对氟哌啶醇敏感的σ受体有效的高特异性光亲和标记物,将有助于其生化和分子特征的研究。